Tailoring lipid nanoparticle dimensions through manufacturing processes†

Caitlin McMillan, Amy Druschitz, Stephen Rumbelow, Ankita Borah, Burcu Binici, Zahra Rattray and Yvonne Perrie
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Abstract

Lipid nanoparticles (LNPs), most commonly recognised for their role in COVID-19 mRNA vaccines, are important delivery vehicles for nucleic acid (mRNA, siRNA) therapies. The physicochemical attributes, such as size, nucleic acid encapsulation and electric charge, may have a significant impact on the efficacy of these medicines. In this study, adjustments to aqueous to lipid phase ratios were assessed for their impact on LNP size and other critical quality attributes (CQAs). It was observed that minor adjustments of aqueous-to-organic lipid phase ratios can be used to precisely control the size of ALC-0315-formulated LNPs. This was then used to evaluate the impact of phase ratio and corresponding size ranges on the in vitro and in vivo expression of these LNPs. In HEK293 cells, larger LNPs led to higher expression of the mRNA cargo within the LNPs, with a linear correlation between size and expression. In THP-1 cells this preference for larger LNPs was observed up to 120 d.nm after which there was a fall in expression. In BALB/c mice, however, LNPs at the lowest phase ratio tested, >120 d.nm, showed reduced expression compared to those of range 60–120 d.nm, within which there was no significant difference between sizes. These results suggest a robustness of LNP expression up to 120 d.nm, larger than those <100 d.nm conventionally used in medicine.

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通过制造工艺定制脂质纳米粒子的尺寸。
脂质纳米颗粒(LNPs)因其在 COVID-19 mRNA 疫苗中的作用而广为人知,是核酸(mRNA、siRNA)疗法的重要传递载体。尺寸、核酸封装和电荷等理化属性可能会对这些药物的疗效产生重大影响。本研究评估了水相与脂相比例的调整对 LNP 尺寸和其他关键质量属性 (CQA) 的影响。研究发现,水相与有机脂相比例的微小调整可用于精确控制 ALC-0315 配制的 LNP 的大小。随后,研究人员利用这种方法评估了相比和相应尺寸范围对这些 LNPs 体外和体内表达的影响。在 HEK293 细胞中,较大的 LNPs 会导致 LNPs 内 mRNA 货物的较高表达量,大小与表达量之间呈线性相关。在 THP-1 细胞中,这种对较大 LNPs 的偏好一直持续到 120 d.nm,之后表达量下降。然而,在 BALB/c 小鼠中,相位比最低的 LNPs(大于 120 d.nm)与相位比在 60-120 d.nm 之间的 LNPs 相比,表达量有所下降,而相位比在 60-120 d.nm 之间的 LNPs 在大小上没有显著差异。这些结果表明,120 d.nm以下的 LNP 表达具有稳健性,大于 60-120 d.nm 的 LNP 表达。
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